A series of atmospheric instruments were deployed aboard the research vessel RV Investigator for a 42-day campaign in 2018 to quantify aerosol optical depth and the properties associated with aerosol in the Southern Ocean marine boundary layer between Australia and Antarctica. The optical depth measurements collected via Microtops sun photometers and LiDAR were analysed for data compatibility to increase the dataset. It was found that aerosol optical depth that was derived from the day-time LiDAR measurements were too noisy to be compatible with the known optical depth measurements. However, an analysis exploring optical depth measurements derived from night-time data indicated moderate compatibility with the known measurements and could be...
Due to its light attenuation and scattering properties, aerosols influence radiance measured by sate...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
Our research effort is focused on improving our understanding of aerosol properties needed for optic...
A series of atmospheric instruments were deployed aboard the research vessel RV Investigator for a 4...
The aerosol optical depth at 4 wavelengths (368, 500, 778 and 868nm) has been measured automatically...
A shipborne Sun-sky-lunar photometer of type CE318-T was tested during two trans-Atlantic cruises ab...
The results of the evaluation of several inversion procedures that were used to select one which pro...
The multi-wavelength Raman lidar PollyXT has been regularly operated aboard the research vessel Pola...
Aerosols suspended in the atmosphere scatter and absorb downwelling and upwelling radiation and also...
Weather and climate models are challenged by uncertainties and biases in simulating Southern Ocean (...
The paper presents the current status of the Maritime Aerosol Network (MAN), which has been develope...
Weather and climate models are challenged by uncertainties and biases in simulating Southern Ocean (...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
International audienceAbstract. The Maritime Aerosol Network (MAN) has been collecting data over the...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
Due to its light attenuation and scattering properties, aerosols influence radiance measured by sate...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
Our research effort is focused on improving our understanding of aerosol properties needed for optic...
A series of atmospheric instruments were deployed aboard the research vessel RV Investigator for a 4...
The aerosol optical depth at 4 wavelengths (368, 500, 778 and 868nm) has been measured automatically...
A shipborne Sun-sky-lunar photometer of type CE318-T was tested during two trans-Atlantic cruises ab...
The results of the evaluation of several inversion procedures that were used to select one which pro...
The multi-wavelength Raman lidar PollyXT has been regularly operated aboard the research vessel Pola...
Aerosols suspended in the atmosphere scatter and absorb downwelling and upwelling radiation and also...
Weather and climate models are challenged by uncertainties and biases in simulating Southern Ocean (...
The paper presents the current status of the Maritime Aerosol Network (MAN), which has been develope...
Weather and climate models are challenged by uncertainties and biases in simulating Southern Ocean (...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
International audienceAbstract. The Maritime Aerosol Network (MAN) has been collecting data over the...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
Due to its light attenuation and scattering properties, aerosols influence radiance measured by sate...
Due to its remote location and extreme weather conditions, atmospheric in situ measurements are rare...
Our research effort is focused on improving our understanding of aerosol properties needed for optic...